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首页> 外文期刊>Materials Science and Engineering >Reprint of: Sintering of BN/cemented carbide composites under an electric field for improved mechanical performances
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Reprint of: Sintering of BN/cemented carbide composites under an electric field for improved mechanical performances

机译:转载:在电场下烧结BN /硬质合金复合材料以改善机械性能

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摘要

In the present study, attempts were made to fabricate cemented carbide (WC/Co) composites toughed with cubic boron nitride (cBN) for structural applications using a field assisted sintering technique. The effects of the content of cBN and the soaking time during the sintering process on the consolidation and mechanical performance of the materials were studied. It was found that with the increase of the cBN content from 0 to 30vol%, the densification of the composites was hindered and relative density decreased from 99.5% to 92.18%. Phase transformation of the cBN to the hexagonal structure was related to the content of cBN due to the joule heat generated in the interface and tended to occur when a cBN content higher than 5vol% was incorporated and sintered for more than 8 min. Both the hardness and toughness showed considerable improvements with an introduction of 5 vol% cBN and continuous decrease with its further addition. A maximum enhancement of around 12% and 20% were achieved for the hardness and toughness respectively. A long period sintering degraded the mechanical performances of the cBN-WC/Co composites by forming the pores or holes and promoting the phase transformation of the cBN. The results obtained are expected to lay a foundation for the fast fabrication of high performance structural materials.
机译:在本研究中,尝试使用场辅助烧结技术制造用立方氮化硼(cBN)增韧的硬质合金(WC / Co)复合材料。研究了烧结过程中立方氮化硼含量和保温时间对材料固结和力学性能的影响。发现随着cBN含量从0到30vol%的增加,复合材料的致密化受到阻碍,相对密度从99.5%降低到92.18%。由于界面中产生的焦耳热,cBN向六方结构的相变与cBN的含量有关,并且当cBN含量高于5vol%并烧结8分钟以上时,往往会发生cBN的相变。引入5%(体积)的立方氮化硼,硬度和韧性均显示出显着的改善,而进一步添加则持续降低。硬度和韧性分别提高了约12%和20%。长时间的烧结会通过形成孔或孔并促进cBN的相变而降低cBN-WC / Co复合材料的机械性能。预期获得的结果将为高性能结构材料的快速制造奠定基础。

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